Neonicotinoid Insecticides Alter the Transcriptome of Soybean and Decrease Plant Resistance
Neonicotinoids are widely used systemic insecticides that have been associated with spider mite outbreaks on diverse plants. These insecticides have complex effects on plant physiology, which have been speculated to drive enhanced performance of spider mites. We used RNA-Seq to explore how neonicoti...
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doaj-991683498cc14f5f87ea5664472cba0e2020-11-24T23:31:17ZengMDPI AGInternational Journal of Molecular Sciences1422-00672019-02-0120378310.3390/ijms20030783ijms20030783Neonicotinoid Insecticides Alter the Transcriptome of Soybean and Decrease Plant ResistanceJason A. Wulff0Mahnaz Kiani1Karly Regan2Micky D. Eubanks3Adrianna Szczepaniec4Department of Entomology, Texas A&M University, College Station, TX 77843, USADepartment of Entomology, Texas A&M AgriLife Research, Amarillo, TX 79106, USADepartment of Entomology, Penn State University, University Park, PA 16801, USADepartment of Entomology, Texas A&M University, College Station, TX 77843, USADepartment of Entomology, Texas A&M AgriLife Research, Amarillo, TX 79106, USANeonicotinoids are widely used systemic insecticides that have been associated with spider mite outbreaks on diverse plants. These insecticides have complex effects on plant physiology, which have been speculated to drive enhanced performance of spider mites. We used RNA-Seq to explore how neonicotinoids modify gene expression in soybean thereby lowering plant resistance. We exposed soybean (<i>Glycine max</i> L.) to two neonicotinoid insecticides, thiamethoxam applied to seeds and imidacloprid applied as a soil drench, and we exposed a subset of these plants to spider mites (<i>Tetranychus cinnabarinus</i>). Applications of both insecticides downregulated genes involved in plant—pathogen interactions, phytohormone pathways, phenylpropanoid pathway, and cell wall biosynthesis. These effects were especially pronounced in plants exposed to thiamethoxam. Introduction of spider mites restored induction of genes in these pathways in plants treated with imidacloprid, while expression of genes involved in phenylpropanoid synthesis, in particular, remained downregulated in thiamethoxam-treated plants. Our outcomes indicate that both insecticides suppress genes in pathways relevant to plant⁻arthropod interactions, and suppression of genes involved in cell wall synthesis may explain lower plant resistance to spider mites, cell-content feeders. These effects appear to be particularly significant when plants are exposed to neonicotinoids applied to soybean seeds.https://www.mdpi.com/1422-0067/20/3/783thiamethoxamimidaclopridspider mites<i>Glycine max</i><i>Tetranychus cinnabarinus</i> |
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DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Jason A. Wulff Mahnaz Kiani Karly Regan Micky D. Eubanks Adrianna Szczepaniec |
spellingShingle |
Jason A. Wulff Mahnaz Kiani Karly Regan Micky D. Eubanks Adrianna Szczepaniec Neonicotinoid Insecticides Alter the Transcriptome of Soybean and Decrease Plant Resistance International Journal of Molecular Sciences thiamethoxam imidacloprid spider mites <i>Glycine max</i> <i>Tetranychus cinnabarinus</i> |
author_facet |
Jason A. Wulff Mahnaz Kiani Karly Regan Micky D. Eubanks Adrianna Szczepaniec |
author_sort |
Jason A. Wulff |
title |
Neonicotinoid Insecticides Alter the Transcriptome of Soybean and Decrease Plant Resistance |
title_short |
Neonicotinoid Insecticides Alter the Transcriptome of Soybean and Decrease Plant Resistance |
title_full |
Neonicotinoid Insecticides Alter the Transcriptome of Soybean and Decrease Plant Resistance |
title_fullStr |
Neonicotinoid Insecticides Alter the Transcriptome of Soybean and Decrease Plant Resistance |
title_full_unstemmed |
Neonicotinoid Insecticides Alter the Transcriptome of Soybean and Decrease Plant Resistance |
title_sort |
neonicotinoid insecticides alter the transcriptome of soybean and decrease plant resistance |
publisher |
MDPI AG |
series |
International Journal of Molecular Sciences |
issn |
1422-0067 |
publishDate |
2019-02-01 |
description |
Neonicotinoids are widely used systemic insecticides that have been associated with spider mite outbreaks on diverse plants. These insecticides have complex effects on plant physiology, which have been speculated to drive enhanced performance of spider mites. We used RNA-Seq to explore how neonicotinoids modify gene expression in soybean thereby lowering plant resistance. We exposed soybean (<i>Glycine max</i> L.) to two neonicotinoid insecticides, thiamethoxam applied to seeds and imidacloprid applied as a soil drench, and we exposed a subset of these plants to spider mites (<i>Tetranychus cinnabarinus</i>). Applications of both insecticides downregulated genes involved in plant—pathogen interactions, phytohormone pathways, phenylpropanoid pathway, and cell wall biosynthesis. These effects were especially pronounced in plants exposed to thiamethoxam. Introduction of spider mites restored induction of genes in these pathways in plants treated with imidacloprid, while expression of genes involved in phenylpropanoid synthesis, in particular, remained downregulated in thiamethoxam-treated plants. Our outcomes indicate that both insecticides suppress genes in pathways relevant to plant⁻arthropod interactions, and suppression of genes involved in cell wall synthesis may explain lower plant resistance to spider mites, cell-content feeders. These effects appear to be particularly significant when plants are exposed to neonicotinoids applied to soybean seeds. |
topic |
thiamethoxam imidacloprid spider mites <i>Glycine max</i> <i>Tetranychus cinnabarinus</i> |
url |
https://www.mdpi.com/1422-0067/20/3/783 |
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